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首页> 外文期刊>Analytical chemistry >Instrument-Free Synthesizable Fabrication of Label-Free Optical Biosensing Paper Strips for the Early Detection of Infectious Keratoconjunctivitides
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Instrument-Free Synthesizable Fabrication of Label-Free Optical Biosensing Paper Strips for the Early Detection of Infectious Keratoconjunctivitides

机译:用于检测感染性角结膜的无标签光学生物传感纸带的无仪器可合成制备

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摘要

We introduce a surface-enhanced Raman scattering (SERS)-functionalized, gold nanoparticle (GNP)-deposited paper strip capable of label-free biofluid sensing for the early detection of infectious eye diseases. The GNP biosensing paper strip was fabricated by the direct synthesis and deposition of GNPs on wax-divided hydrophilic areas of a permeable porous substrate through a facile, power-free synthesizable, and highly reproducible successive ionic layer absorption and reaction (SILAR) technique. To maximize localized surface plasmon resonance-generated SERS activity, the concentration of the reactive solution and number of SILAR cycles were optimized by controlling the size and gap distance of GNPs and verified by computational modeling with geometrical hypotheses of Gaussian-estimated metallic nanoparticles. The responses of our SERS-functionalized GNP paper strip to Raman intensities exhibited an enhancement factor of 7.8 x 10(8), high reproducibility (relative standard deviation of 7.5%), and 1 pM 2-naphthalenethiol highly sensitive detection limit with a correlation coefficient of 0.99, achieved by optimized SILAR. conditions including a 10/10 mM/mM HAuCl4/NaBH4 concentration and six SILAR cycles. The SERS-functionalized GNP paper is supported by a multivariate statistics-preprocessed machine learning-judged bioclassification system to provide excellent label-free chemical structure sensitivity for identifying infectious keratoconjunctivitis. The power-free synthesizable fabrication, label-free, rapid analysis, and high sensitivity feature of the SILAR-fabricated SERS-functionalized GNP biosensing paper strip makes it an excellent alternative in point-of-care applications for the early detection of various infectious diseases.
机译:我们介绍了一种表面增强的拉曼散射(SERS)功能化的,金纳米颗粒(GNP)沉积的纸条,该纸条能够进行无标签的生物流体传感,从而可以早期发现传染性眼病。 GNP生物传感纸条是通过将GNP直接合成并沉积在可渗透的多孔基材的蜡分隔的亲水区域上而制成的,该方法采用简便,无功率的可合成且高度可重复的连续离子层吸收和反应(SILAR)技术。为了最大化局部表面等离子体激元共振产生的SERS活性,通过控制GNP的大小和间隙距离来优化反应溶液的浓度和SILAR循环数,并用高斯估计的金属纳米粒子的几何假设通过计算模型进行验证。我们的SERS功能化GNP纸条对拉曼强度的响应表现出7.8 x 10(8)的增强因子,高重现性(相对标准偏差为7.5%)和1 pM 2-萘硫醇高灵敏度检测限(具有相关系数) 0.99,是通过优化SILAR实现的。条件包括10/10 mM / mM HAuCl4 / NaBH4浓度和六个SILAR循环。 SERS功能化的GNP纸由多变量统计预处理机器学习判断的生物分类系统支持,可提供出色的无标签化学结构敏感性来鉴定感染性角膜结膜炎。 SILAR制造的SERS功能化GNP生物传感纸带的无功耗可合成制造,无标签,快速分析和高灵敏度特性,使其成为即时检测各种传染病的即时医疗应用的极佳替代品。

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